市場調查報告書
商品編碼
1208675
全球特種炭黑市場 - 2023-2030Global Specialty Carbon Black Market - 2023-2030 |
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全球特種炭黑市場預計在預測期內(2023 年至 2030 年)以 7.2% 的複合年增長率增長。
特種炭黑是一種優質精細化學品,通過燃燒碳氫化合物和最少的空氣生產。 最好的炭黑形式,特種炭黑,也稱為顏料黑,其特點是灰分、硫、金屬和其他雜質含量最低。 特種炭黑的生產方法有四種:燈黑、熱裂炭黑、乙炔黑和爐黑。
不斷增長的全球電池需求正在推動全球特種炭黑市場的發展。 然而,替代品的可用性是市場的一個關鍵限制因素。
全球電池需求增加
電動汽車市場是清潔能源領域最活躍的市場之一。 2021 年電動汽車 (EV) 銷量將同比翻一番,達到 660 萬輛的歷史新高。 2012 年全球僅售出 120,000 輛電動汽車。 2021 年每週都會售出更多。 2021 年電動汽車的市場份額將從 2019 年的僅 2% 增長到 10% 左右。 因此,全球電動汽車的數量將超過 1650 萬輛,是 2018 年的三倍。 2022年一季度電動汽車銷量達200萬輛,較2021年同期增長75%,電動汽車市場持續快速增長。 電池為當今連接我們的幾乎所有小工具提供動力,上述數據只是需求不斷增長的實際數字的一小部分。
為了將非導電活性材料和集電器電連接起來,現代鋰離子電池的正極利用適量的特殊炭黑形成導電網絡。我來了。 沒有每一道塗層,活性物質表面就變成細密的網眼,電流無法流動,電池的性能就無法體現。
此外,特種炭黑可提高電池倍率和容量,從而延長電池壽命。 它還具有化學惰性、無毒、重量輕且經濟。 添加特種炭黑會顯著影響陽極和陰極的成分參數。 在傳統的鋰離子電池配方中,活性成分、導電添加劑和粘合劑被配製成粘稠的漿料,因此炭黑必須很好地分散在漿料中。 高結構炭黑易於分散,這對漿料粘度和可實現的固體含量有很大影響。 固含量高的漿料需要的溶劑少,可以大大提高電池的生產效率。 因此,電子行業對特種炭黑的需求呈指數級增長。 因此,全球電池需求的增加可能被認為是全球特種炭黑市場的主要市場驅動力。
替代品的可用性
地殼的成分矽和氧結合形成二氧化矽(也稱為二氧化矽)。 二氧化矽目前用於多種應用。 由於全球建築項目的增加,2021 年對二氧化矽的需求猛增。
二氧化矽被綠色輪胎製造商用作特種炭黑的替代品,為用戶帶來有益的環境效益。 在塑料、電子產品和輪胎的製造中,二氧化矽現在被用作特種炭黑的替代品。 明智地說,作為特種炭黑的主要替代品之一的二氧化矽正在限制其各自的行業,因為二氧化矽的使用增加將減少特種炭黑市場的需求。 因此,替代品的可用性是市場的主要製約因素。
COVID-19 影響分析
COVID-19 大流行對全球經濟產生了深遠影響。 特種炭黑的工業規模合成需要大型設備、工業規模的化學品和訓練有素的員工,這阻礙了生產。 疫情期間,社交距離規定和行業停工嚴重擾亂了生產。 此外,由於 COVID-19 大流行導致的封鎖使得難以獲得製造特種炭黑和成品所需的原材料。 結果,特種碳市場的供需平衡受到不利影響。 此外,由於全球 COVID-19 大流行而導致的停工中斷了特種炭黑的生產和成品運輸。 它對特種碳市場的供需動態產生了重大影響。
然而,儘管 COVID-19 大流行和困擾全球原料市場的其他中斷對世界各地的企業造成了破壞性影響,但橡膠、塑料、電池對特種炭黑的需求持續增長,它被用於許多產品例如電極、油漆和塗料,並且由於使用導電炭黑,目前正在激增。 此外,特種炭黑主要用於提高聚合物的耐久性、拉伸強度和耐磨損、磨損和腐蝕能力。
總而言之,雖然一些國際市場進入者因 COVID-19 法規和停工措施而遇到原材料限制和物流瓶頸,但由於產品增長,導電材料有望實現跨越式增長。
The global specialty carbon black market reached US$ XX million in 2022 and is expected to record significant growth by reaching up to US$ XX million by 2029, growing at a CAGR of 7.2% during the forecast period (2023-2030).
Specialty carbon black, a premium, refined chemical, is created by burning hydrocarbons with a minimal amount of air. The finest form of carbon black, specialty carbon black, also known as pigment black, has the fewest amounts of ash, sulfur, metals and other impurities. Lampblack, thermal black, acetylene black and furnace black are four production methods used to create specialty carbon black.
The increasing demand for batteries globally drives the global specialty carbon black market. However, the availability of substitutes is a significant market restraint.
Increasing demand for batteries globally
The market for electric cars is one of the most active in the clean energy sector. In 2021, the number of electric vehicle (EV) sales doubled from the previous year to reach a new high of 6.6 million. Only 120 000 electric vehicles were sold globally in 2012. More than that, many will be sold each week in 2021. In 2021, the market share for electric vehicles was about 10% worldwide, up from just 2% in 2019. With this, there are over 16.5 million electric vehicles worldwide, three times more than in 2018. With 2 million electric vehicle sales in the first quarter of 2022, a 75% increase over the same time in 2021, the market for electric vehicles has continued to grow rapidly. The data mentioned above is just a speck of the actual number in the growing demand for batteries, as it powers almost all the modern gadgets that connect modernity.
To ensure that the non-conductive active elements are electrically connected and the current collector, specialty carbon black, is utilized in the cathode of modern lithium-ion batteries in modest dosages to create a conductive network. Without the respective coating, the surface of the active material is in a fine network and the battery would not perform as the electrical current would not flow.
Further, Specialty carbon black improves battery rate and capacity, lengthening the battery's lifespan. It offers great chemical inertness and is non-toxic, light and economical. Specialty carbon black additions can significantly impact the anode and cathode composition parameters. The carbon black must be thoroughly disseminated in the slurry in conventional lithium-ion battery formulations, where the active component, conductive additive and binder are combined into a viscous slurry. High-structure carbon black exhibits easier dispersion, which can significantly affect the slurry's viscosity and feasible, solid loading. Slurries with a larger solid content require less solvent, which can considerably increase battery production efficiency. Therefore, the demand for specialty carbon black in the electronics industry is rising exponentially. As a result, the growing demand for batteries globally could be recognized a major market driver for the global specialty carbon black market.
Availability of substitutes
The earth's crustal components, silicon and oxygen, combine to form silica, also referred to as silicon dioxide. Currently, silica has many different applications. Due to an increase in construction projects worldwide in 2021, silica demand soared.
Silica is used in place of specialist carbon black by green tire makers to provide users with environmentally beneficial advantages. Silica is currently employed in manufacturing plastics, electronics and tires as a replacement for specialty carbon black. Since the growing adoption of silica reduces the demand for the specialty carbon black market, it is sensible to say the respective industry is being constrained by silica, one of the main replacements for specialty carbon black. Therefore, the availability of substitutes is a major market restraint.
COVID-19 Impact Analysis
The COVID-19 pandemic had a wide-ranging impact on the worldwide economy. The production of specialty carbon black has been disturbed, as an industrial-scale synthesis of the product requires massive apparatus, industrial-scale chemicals and trained employees. During the epidemic, social distancing regulations and industry lockdowns severely hampered production. Furthermore, it was challenging to get the raw materials required to make specialty carbon black and finished products due to the worldwide COVID-19 pandemic lockdown. As a result, the demand-supply dynamics of the specialty carbon market were adversely affected. The COVID-19 pandemic-related global shutdown also interfered with the production of specialty carbon black and the transport of finished goods. Demand-supply dynamics in the market for specialty carbon market were significantly impacted.
However, despite the COVID-19 pandemic's disruptive effects on businesses all over the world and the other turbulences plaguing the global raw material markets, demand for specialty carbon black is currently surging due to its application in numerous products, including rubber, plastics, batteries, electrodes, paints and coatings, among others use electrical conductive carbon black. Further, the specialty carbon black is mostly employed to boost the durability, tensile strength and resistance to abrasion, friction and corrosion of polymers.
In conclusion, although some international market participants are experiencing feedstock constraints and logistical bottlenecks due to COVID-19 restrictions and lockout measurements, the conductive carbon black market is expected to grow drastically with the growth of EV automotive and plastic products, among others.
The global specialty carbon black market is classified based on form, application and region.
The convenience of tea bags and the desire to eliminate mess are major factors that boost the demand for tea bags in the global specialty carbon black market
The need for packaging materials to better safeguard their contents is growing quickly, notably in the food, beverage and pharmaceutical industries. Concerns concerning plastic's capacity to permit the exchange of gases and vapors that could jeopardize the quality and safety of packaged goods have grown as their use has increased. Unique, safe barrier films and coatings are being introduced to address this. In order to extend product shelf life and offer a visual indication of the status and condition of the product, plastic materials are increasingly being used in active and intelligent packaging. With sales of 20 million tonnes, packaging film was the largest section of the plastic market. Plastic bags and sacks, with total sales of 19.7 million tonnes, were the second-largest market segment for plastic film and the segment will continue to grow in the next five years. In 2021, the plastic applications sector dominated the specialty carbon black market.
In the plastics sector, specialty carbon black is used for various end uses, including agricultural films, plastic pressure pipes, molded components, electrostatic discharge (ESD) plastics, food contact applications in plastics, automotive parts, conductive plastics, wires & cables and more.
Specialty carbon black excels in dispersibility, tinting strength, conductivity and UV resistance. These qualities help polymers meet end-user performance requirements by enabling critical functionality. In addition, its excellent qualities, including strength, color and physical cleanliness UV protection, offer end markets essential value that fuels the segment's growth.
The presence of major players and growing end-user verticals such as construction, automobiles and polymers, among others, allow Asia-Pacific to dominate the regional segment of the global specialty carbon black market
Asia-Pacific leads the industry with more than 45% of the global market share for specialized carbon. A significant reason for the target industry's expansion in the Asia-Pacific region is the rising demand for plastic from the region's construction, automotive, conductive polymers, packaging, coating and packaging industries for various end-use applications.
As China is the world's largest car market, vehicle output will rise from 18,242,588 units in 2021 to 16,976,248 units in 2020. Further, China was responsible for 31% of the world's plastic output, which is produced in Asia-Pacific. The relevant facts stimulate the demand for specialty carbon on the black market.
Furthermore, expanding polymer manufacturing in the major Asian economies such as China, Vietnam, Thailand, India, Malaysia and South Korea is projected to spur regional market expansion during the coming several years.
Asia-Pacific's rapidly expanding paint and coatings industry is anticipated to fuel the need for specialty carbon black throughout the projected period. Another element that will soon contribute to the expansion of the Asia-Pacific specialty carbon black market is the existence of important operating players in the region, Birla Carbon, Himadri Speciality Chemical Ltd, among others.
The global specialty carbon black market is enormous and is becoming increasingly competitive due to the presence of significant players such as Mitsubishi Chemical Corporation, Denka Company Limited, Cabot Corporation, Imerys S.A., Phillips Carbon Black Limited, Lion Specialty Chemicals Co., Ltd., Tokai Carbon Co., Ltd., Birla Carbon, Ampacet Corporation and Himadri Speciality Chemical Ltd. The market is fragmented and market players employ market tactics such as mergers, acquisitions, product launches, contributions and collaborations to gain a competitive advantage and recognition.
Birla Carbon
Overview: Birla Carbon manufactures and sells high-quality carbon black as one of its most popular products. The firm has 16 manufacturing facilities spread across 12 different countries with a combined annual capacity of 2 million tonnes.
Birla Carbon has a wide range of specialty blacks to meet the specific needs of rubber, plastics, coatings, inks and other specialized sectors. The corporation, which sells goods to consumers in the Tires, Rubber, Plastics, Inks and Paints sectors, is well known for its extensive manufacturing footprint, significant production capacity and first-rate supply and distribution networks. The two Birla Carbon campuses in U.S. and India have cutting-edge technology centers with well-stocked labs and R&D capabilities.
The global Specialty Carbon Black market report would provide approximately 53 tables, 48 figures and almost 163 pages.
Target Audience 2023
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